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Cyclic performance of extended end-plate connections equipped with shape memory alloy bolts

机译:配有形状记忆合金螺栓的扩展端板连接的循环性能

摘要

Shape memory alloys (SMAs) are nowadays promising candidates for seismic engineering applications because of their ability to undergo reversible deformations and to dissipate energy when subjected to cyclic loading. This paper presents an experimental study of the cyclic performance of extended end-plate connections connected using SMA bolts instead of normal high strength bolts in the connections. The basic concept is to concentrate the earthquake-induced deformation into the connection, such that a 'superelastic' hinge can be formed via the elongation of the SMA bolts. Eight full-scale tests were conducted including seven extended end-plate connections with SMA bolts and one conventional extended end-plate connection with normal high strength bolts. The SMA connection specimens were shown to have excellent recentring abilities and moderate energy dissipation capability with an equivalent viscous damping up to 17.5%. The stiffness and strength of these connections mainly fell into the semi-rigid and partial-strength categories, respectively. The ductility, which was governed by SMA bolt rupture, was found to be dependent on the net threaded-to-shank area ratio of the bolts, where a lower ratio led to earlier bolt fracture over the net threaded cross-section. On the other hand, the conventional extended end-plate connection with High Strength bolts was shown to have good energy dissipation capability and ductility but with considerable permanent deformation. To enable a further understanding of the SMA connections, preliminary numerical models were established and validated by the test results. Based on the results of the tests and the numerical investigations, preliminary design considerations for such connections are given.
机译:如今,形状记忆合金(SMA)由于在循环载荷下具有可逆变形和耗散能量的能力,因此在地震工程应用中很有前途。本文介绍了使用SMA螺栓代替普通高强度螺栓连接的扩展端板连接的循环性能的实验研究。基本概念是将地震引起的变形集中到连接中,以便可以通过SMA螺栓的伸长形成“超弹性”铰链。进行了八次全面测试,包括七个使用SMA螺栓的延伸端板连接和一个使用普通高强度螺栓的常规延伸式端板连接。 SMA连接样品具有出色的重载能力和适度的能量耗散能力,等效粘性阻尼高达17.5%。这些连接的刚度和强度主要分为半刚性和部分强度类别。发现由SMA螺栓断裂控制的延展性取决于螺栓的净螺纹与柄部面积之比,其中较低的比率导致在净螺纹横截面上较早的螺栓断裂。另一方面,传统的使用高强度螺栓的扩展端板连接具有良好的能量消散能力和延展性,但具有相当大的永久变形。为了进一步了解SMA连接,建立了初步的数值模型并通过测试结果进行了验证。根据测试结果和数值研究,给出了此类连接的初步设计考虑。

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